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Experimental Investigation of the Hydraulic Erosion of Noncohesive Compacted Soils

机译:非粘性压实土的水力侵蚀试验研究

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This paper presents the results of a laboratory investigation whose purpose was to evaluate the effects of compaction on the erodibility of cohesionless soils. By means of a recently developed flume experiment, sediment erosion rates and incipient motion, as a function of shear stress, average velocity, and dry density, have been determined for three compacted sand and gravel mixtures. A preliminary comparison of the incipient motion values shows that granular soils compacted at the Proctor optimum have a higher resistance to free surface flow erosion than those compacted at lower and higher densities. This leads one to infer that the Proctor optimum, generally used as a standard for construction, might also be an optimum for hydraulic resistance and stability. Additional comparison of the experimental data with two commonly used incipient motion criteria also suggests that Yang's criterion is a better predictor of soil detachment than the Shields-Yalin criterion.
机译:本文介绍了一项实验室研究的结果,其目的是评估压实对无粘性土壤易蚀性的影响。通过最近开发的水槽实验,已经确定了三种压实的沙子和砾石混合物的沉积物侵蚀速率和初期运动,它们是切应力,平均速度和干密度的函数。初期运动值的初步比较表明,与在较低和较高密度下压实的土壤相比,以Proctor最佳压实的粒状土壤对自由表面流侵蚀的抵抗力更高。这导致人们推断,通常用作施工标准的Proctor最佳化也可能是液压阻力和稳定性的最佳化。与两个常用的初始运动准则进行的实验数据的进一步比较还表明,与Shields-Yalin准则相比,Yang准则更能预测土壤脱离。

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